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1.
Biosci Rep ; 37(3)2017 Jun 30.
Article in English | MEDLINE | ID: mdl-28515222

ABSTRACT

Preclinical screening with animal models is an important initial step in clinical translation of new drug delivery systems. However, establishing efficacy, biodistribution, and biotoxicity of complex, multicomponent systems in small animal models can be expensive and time-consuming. Zebrafish models represent an alternative for preclinical studies for nanoscale drug delivery systems. These models allow easy optical imaging, large sample size, and organ-specific studies, and hence an increasing number of preclinical studies are employing zebrafish models. In this review, we introduce various models and discuss recent studies of nanoscale drug delivery systems in zebrafish models. Also in the end, we proposed a guideline for the preclinical trials to accelerate the progress in this field.


Subject(s)
Drug Evaluation, Preclinical/methods , Models, Biological , Nanostructures/adverse effects , Nanostructures/therapeutic use , Zebrafish/metabolism , Animals , Drug Delivery Systems/adverse effects , Drug Delivery Systems/methods
2.
Environ Pollut ; 216: 755-763, 2016 Sep.
Article in English | MEDLINE | ID: mdl-27364464

ABSTRACT

Recent development in the field of nanomaterials has given rise into the inquiries regarding the toxicological characteristics of the nanomaterials. While many individual nanomaterials have been screened for their toxicological effects, composites that accompany nanomaterials are not common subjects to such screening through toxicological assessment. One of the widely used composites that accompany nanomaterials is catalyst composite used to reduce air pollution, which was selected as a target composite with nanomaterials for the multifaceted toxicological assessment. As existing studies did not possess any significant data regarding such catalyst composites, this study focuses on investigating toxicological characteristics of catalyst composites from various angles in both in-vitro and in-vivo settings. Initial toxicological assessment on catalyst composites was conducted using HUVECs for cell viability assays, and subsequent in-vivo assay regarding their direct influence on living organisms was done. The zebrafish embryo and its transgenic lines were used in the in-vivo assays to obtain multifaceted analytic results. Data obtained from the in-vivo assays include blood vessel formation, mutated heart morphology, and heart functionality change. Our multifaceted toxicological assessment pointed out that chemical composites augmented with nanomaterials can too have toxicological threat as much as individual nanomaterials do and alarms us with their danger. This manuscript provides a multifaceted assessment for composites augmented with nanomaterials, of which their toxicological threats have been overlooked.


Subject(s)
Embryo, Nonmammalian/drug effects , Nanostructures/toxicity , Toxicity Tests/methods , Animals , Animals, Genetically Modified , Biological Assay/methods , Catalysis , Cells, Cultured , Drug Evaluation, Preclinical/methods , Endothelial Cells/drug effects , Humans , Nanostructures/chemistry , Zebrafish
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